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// serialize.c - Universal binary serialization with dynamic allocation
#include "serialize.h"
#include <string.h>
static uint16_t length_encode(uint8_t* out, uint16_t val) {
if (out) {
out[0] = (uint8_t)(val >> 8);
out[1] = (uint8_t)val;
}
return 2;
}
static uint16_t length_decode(const uint8_t* in, size_t in_len, size_t* consumed) {
if (!in || in_len < 2) {
if (consumed) *consumed = 0;
return 0;
}
if (consumed) *consumed = 2;
return ((uint16_t)in[0] << 8) | in[1];
}
static size_t get_len_field(const uint8_t* data, const struct SerializeField* f) {
if (!f || !data || f->len_type == 0) return 0;
const uint8_t* len_ptr = data + f->len_offset;
if (f->len_type == 1) {
return *len_ptr;
} else if (f->len_type == 2) {
return *(const uint16_t*)len_ptr;
} else if (f->len_type == 4) {
return *(const uint32_t*)len_ptr;
}
return 0;
}
static void set_len_field(uint8_t* data, const struct SerializeField* f, size_t len) {
if (!f || !data || f->len_type == 0) return;
uint8_t* len_ptr = data + f->len_offset;
if (f->len_type == 1) {
*len_ptr = (uint8_t)len;
} else if (f->len_type == 2) {
*(uint16_t*)len_ptr = (uint16_t)len;
} else if (f->len_type == 4) {
*(uint32_t*)len_ptr = (uint32_t)len;
}
}
static size_t fixed_field_size(const struct SerializeSchema* schema, size_t idx) {
if (idx >= schema->field_count) return 0;
const struct SerializeField* f = &schema->fields[idx];
if (f->elem_size != 0) return 0;
size_t next_offset = (idx + 1 < schema->field_count) ?
schema->fields[idx + 1].offset :
schema->struct_size;
return (next_offset > f->offset) ? (next_offset - f->offset) : 0;
}
int serialize_encode(const void* structure,
const struct SerializeSchema* schema,
const uint8_t* header,
uint8_t** out_buf,
size_t* out_len) {
if (!schema || !structure || !out_buf || !out_len) return SERIALIZE_ERR_NULL;
const uint8_t* data = (const uint8_t*)structure;
size_t total = schema->header_len;
for (size_t i = 0; i < schema->field_count; i++) {
const struct SerializeField* f = &schema->fields[i];
if (f->elem_size == 0) {
total += fixed_field_size(schema, i);
} else {
size_t raw_len;
if (f->elem_size == 1) { // string
const char* str = *(const char**)(data + f->offset);
raw_len = (f->len_type != 0) ? get_len_field(data, f)
: (str ? strlen(str) : 0);
} else { // array
const uint8_t* arr = *(const uint8_t**)(data + f->offset);
raw_len = (f->len_type != 0) ? get_len_field(data, f)
: f->max_size;
if (raw_len > 0 && !arr) raw_len = 0;
}
uint16_t len = (raw_len > f->max_size) ? f->max_size : (uint16_t)raw_len;
total += length_encode(NULL, len);
if (f->elem_size == 1) {
total += (size_t)len + 1; // data + null terminator
} else {
total += (size_t)len * f->elem_size;
}
}
}
uint8_t* buf = u_malloc(total);
if (!buf) return SERIALIZE_ERR_BUF;
uint8_t* ptr = buf;
if (header && schema->header_len > 0) {
memcpy(ptr, header, schema->header_len);
ptr += schema->header_len;
}
for (size_t i = 0; i < schema->field_count; i++) {
const struct SerializeField* f = &schema->fields[i];
const uint8_t* fld = data + f->offset;
if (f->elem_size == 0) {
size_t sz = fixed_field_size(schema, i);
if (sz > 0) {
memcpy(ptr, fld, sz);
ptr += sz;
}
} else if (f->elem_size == 1) { // string
const char* str = *(const char**)fld;
size_t raw_len = (f->len_type != 0) ? get_len_field(data, f)
: (str ? strlen(str) : 0);
uint16_t len = (raw_len > f->max_size) ? f->max_size : (uint16_t)raw_len;
if (len > 0 && !str) len = 0;
ptr += length_encode(ptr, len);
if (len > 0) {
memcpy(ptr, str, len);
ptr += len;
}
*ptr++ = '\0';
} else { // array
const uint8_t* arr = *(const uint8_t**)fld;
size_t raw_len = (f->len_type != 0) ? get_len_field(data, f)
: f->max_size;
uint16_t len = (raw_len > f->max_size) ? f->max_size : (uint16_t)raw_len;
if (len > 0 && !arr) len = 0;
ptr += length_encode(ptr, len);
if (len > 0 && arr) {
memcpy(ptr, arr, (size_t)len * f->elem_size);
ptr += (size_t)len * f->elem_size;
}
}
}
*out_buf = buf;
*out_len = ptr - buf;
return SERIALIZE_ERR_OK;
}
int serialize_decode(const uint8_t* in_buf,
size_t in_len,
const struct SerializeSchema* schema,
void** structure) {
if (!in_buf || !schema || !structure) {
if (structure) *structure = NULL;
return SERIALIZE_ERR_NULL;
}
void* obj = u_malloc(schema->struct_size);
if (!obj) {
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
memset(obj, 0, schema->struct_size);
const uint8_t* ptr = in_buf;
const uint8_t* end = in_buf + in_len;
uint8_t* data = (uint8_t*)obj;
size_t consumed;
for (size_t i = 0; i < schema->field_count; i++) {
const struct SerializeField* f = &schema->fields[i];
if (f->elem_size == 0) {
size_t sz = fixed_field_size(schema, i);
if (ptr + sz > end) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
if (sz > 0) {
memcpy(data + f->offset, ptr, sz);
ptr += sz;
}
} else if (f->elem_size == 1) { // string
uint16_t len = length_decode(ptr, end - ptr, &consumed);
if (consumed == 0) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
ptr += consumed;
if (len > f->max_size) len = f->max_size;
size_t needed = (size_t)len + 1;
if ((size_t)(end - ptr) < needed) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
char* str = NULL;
if (len == 0) {
str = u_malloc(1);
if (str) str[0] = '\0';
} else {
str = u_malloc(len + 1);
if (str) {
memcpy(str, ptr, len);
str[len] = '\0';
}
}
*(char**)(data + f->offset) = str;
if (f->len_type != 0) set_len_field(data, f, len);
if (str == NULL) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
ptr += needed;
} else { // array
uint16_t len = length_decode(ptr, end - ptr, &consumed);
if (consumed == 0) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
ptr += consumed;
if (len > f->max_size) len = f->max_size;
size_t arr_sz = (size_t)len * f->elem_size;
if ((size_t)(end - ptr) < arr_sz) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
uint8_t* arr = NULL;
if (arr_sz > 0) {
arr = u_malloc(arr_sz);
if (arr) memcpy(arr, ptr, arr_sz);
}
*(uint8_t**)(data + f->offset) = arr;
if (f->len_type != 0) set_len_field(data, f, len);
if (arr_sz > 0 && arr == NULL) {
serialize_free(schema, &obj);
*structure = NULL;
return SERIALIZE_ERR_BUF;
}
ptr += arr_sz;
}
}
*structure = obj;
return SERIALIZE_ERR_OK;
}
void serialize_free(const struct SerializeSchema* schema, void** structure) {
if (!schema || !structure || !*structure) return;
uint8_t* data = (uint8_t*)*structure;
for (size_t i = 0; i < schema->field_count; i++) {
const struct SerializeField* f = &schema->fields[i];
if (f->elem_size == 1) {
char* str = *(char**)(data + f->offset);
if (str) {
u_free(str);
*(char**)(data + f->offset) = NULL;
}
} else if (f->elem_size > 1) {
uint8_t* arr = *(uint8_t**)(data + f->offset);
if (arr) {
u_free(arr);
*(uint8_t**)(data + f->offset) = NULL;
}
}
}
u_free(*structure);
*structure = NULL;
}